Active node based fault tolerance in Wireless Sensor Network
In this paper, we propose a novel idea of an active node model in Wireless Sensor Network (WSN) to identify the faulty nodes using battery power model and interference model. Fault tolerance against low battery power is designed through hand-off mechanism where in the faulty node selects the neighbo...
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description | In this paper, we propose a novel idea of an active node model in Wireless Sensor Network (WSN) to identify the faulty nodes using battery power model and interference model. Fault tolerance against low battery power is designed through hand-off mechanism where in the faulty node selects the neighboring node having highest power and transfers all the services that are to be performed by the faulty node to the selected neighboring node. The hand-off mechanism involves transmitting the connectivity status of a faulty node such as source address, destination address, previous hop address, next hop address and time stamp to selected neighboring node. Fault tolerance against interference is provided by dynamic power level adjustment mechanism by allocating the time slot to all the neighboring nodes. If a particular node wishes to transmit the sensed data, it enters active status and transmits the packet with maximum power; otherwise it enters into sleep status having minimum power that is sufficient to receive hello messages and to maintain the connectivity. The performance evaluation is tested through simulation for packet delivery ratio and control overhead and we see that there is an improvement in the network throughput and reliability. |
doi_str_mv | 10.1109/INDCON.2012.6420652 |
format | Conference Proceeding |
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D. ; Nalini, N. ; Biradar, R. C.</creator><creatorcontrib>Geetha, D. D. ; Nalini, N. ; Biradar, R. C.</creatorcontrib><description>In this paper, we propose a novel idea of an active node model in Wireless Sensor Network (WSN) to identify the faulty nodes using battery power model and interference model. Fault tolerance against low battery power is designed through hand-off mechanism where in the faulty node selects the neighboring node having highest power and transfers all the services that are to be performed by the faulty node to the selected neighboring node. The hand-off mechanism involves transmitting the connectivity status of a faulty node such as source address, destination address, previous hop address, next hop address and time stamp to selected neighboring node. Fault tolerance against interference is provided by dynamic power level adjustment mechanism by allocating the time slot to all the neighboring nodes. If a particular node wishes to transmit the sensed data, it enters active status and transmits the packet with maximum power; otherwise it enters into sleep status having minimum power that is sufficient to receive hello messages and to maintain the connectivity. 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D.</creatorcontrib><creatorcontrib>Nalini, N.</creatorcontrib><creatorcontrib>Biradar, R. C.</creatorcontrib><title>Active node based fault tolerance in Wireless Sensor Network</title><title>2012 Annual IEEE India Conference (INDICON)</title><addtitle>INDCON</addtitle><description>In this paper, we propose a novel idea of an active node model in Wireless Sensor Network (WSN) to identify the faulty nodes using battery power model and interference model. Fault tolerance against low battery power is designed through hand-off mechanism where in the faulty node selects the neighboring node having highest power and transfers all the services that are to be performed by the faulty node to the selected neighboring node. The hand-off mechanism involves transmitting the connectivity status of a faulty node such as source address, destination address, previous hop address, next hop address and time stamp to selected neighboring node. Fault tolerance against interference is provided by dynamic power level adjustment mechanism by allocating the time slot to all the neighboring nodes. If a particular node wishes to transmit the sensed data, it enters active status and transmits the packet with maximum power; otherwise it enters into sleep status having minimum power that is sufficient to receive hello messages and to maintain the connectivity. The performance evaluation is tested through simulation for packet delivery ratio and control overhead and we see that there is an improvement in the network throughput and reliability.</description><subject>Batteries</subject><subject>Equations</subject><subject>Fault tolerance</subject><subject>Fault tolerant systems</subject><subject>Interference</subject><subject>Mathematical model</subject><subject>Wireless sensor networks</subject><issn>2325-940X</issn><isbn>9781467322706</isbn><isbn>1467322709</isbn><isbn>9781467322720</isbn><isbn>1467322725</isbn><isbn>1467322717</isbn><isbn>9781467322713</isbn><fulltext>true</fulltext><rsrctype>conference_proceeding</rsrctype><creationdate>2012</creationdate><recordtype>conference_proceeding</recordtype><sourceid>6IE</sourceid><sourceid>RIE</sourceid><recordid>eNpVj81Kw0AURkdUsNQ8QTfzAql37vxlwE2Jf4WSLlR0VyaTWxiNicxExbdXsBtXH-csDnyMLQQshQB3sW6u6m2zRBC4NArBaDxihbOVUMZKRItw_I_BnLAZStSlU_B8xoqcXwAAAYTQasYuV2GKn8SHsSPe-kwd3_uPfuLT2FPyQyAeB_4UE_WUM7-nIY-JNzR9jen1nJ3ufZ-pOOycPd5cP9R35WZ7u65XmzIKq6eSXPBGyqClMi2SNaRUZRBcZ4PSoaXKOuNd5btfg0K3AkAHQaaqNLjWyzlb_HUjEe3eU3zz6Xt3-C9_AIqiS0M</recordid><startdate>201212</startdate><enddate>201212</enddate><creator>Geetha, D. 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D.</creatorcontrib><creatorcontrib>Nalini, N.</creatorcontrib><creatorcontrib>Biradar, R. C.</creatorcontrib><collection>IEEE Electronic Library (IEL) Conference Proceedings</collection><collection>IEEE Proceedings Order Plan All Online (POP All Online) 1998-present by volume</collection><collection>IEEE Xplore All Conference Proceedings</collection><collection>IEEE Electronic Library (IEL)</collection><collection>IEEE Proceedings Order Plans (POP All) 1998-Present</collection></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext_linktorsrc</fulltext></delivery><addata><au>Geetha, D. D.</au><au>Nalini, N.</au><au>Biradar, R. C.</au><format>book</format><genre>proceeding</genre><ristype>CONF</ristype><atitle>Active node based fault tolerance in Wireless Sensor Network</atitle><btitle>2012 Annual IEEE India Conference (INDICON)</btitle><stitle>INDCON</stitle><date>2012-12</date><risdate>2012</risdate><spage>404</spage><epage>409</epage><pages>404-409</pages><issn>2325-940X</issn><isbn>9781467322706</isbn><isbn>1467322709</isbn><eisbn>9781467322720</eisbn><eisbn>1467322725</eisbn><eisbn>1467322717</eisbn><eisbn>9781467322713</eisbn><abstract>In this paper, we propose a novel idea of an active node model in Wireless Sensor Network (WSN) to identify the faulty nodes using battery power model and interference model. Fault tolerance against low battery power is designed through hand-off mechanism where in the faulty node selects the neighboring node having highest power and transfers all the services that are to be performed by the faulty node to the selected neighboring node. The hand-off mechanism involves transmitting the connectivity status of a faulty node such as source address, destination address, previous hop address, next hop address and time stamp to selected neighboring node. Fault tolerance against interference is provided by dynamic power level adjustment mechanism by allocating the time slot to all the neighboring nodes. If a particular node wishes to transmit the sensed data, it enters active status and transmits the packet with maximum power; otherwise it enters into sleep status having minimum power that is sufficient to receive hello messages and to maintain the connectivity. The performance evaluation is tested through simulation for packet delivery ratio and control overhead and we see that there is an improvement in the network throughput and reliability.</abstract><pub>IEEE</pub><doi>10.1109/INDCON.2012.6420652</doi><tpages>6</tpages></addata></record> |
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subjects | Batteries Equations Fault tolerance Fault tolerant systems Interference Mathematical model Wireless sensor networks |
title | Active node based fault tolerance in Wireless Sensor Network |
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